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Translational Vision Science & Technology|September 10, 2020
An Artificial Intelligence Approach to Assess Spatial Patterns of Retinal Nerve Fiber Layer Thickness Maps in GlaucomaMengyu Wang, Lucy Q Shen, Louis R Pasquale, et al.American Journal of Ophthalmology|April 9, 2014
Effect of brimonidine on retinal vascular autoregulation and short-term visual function in normal tension glaucomaGilbert T Feke, Peter J Bex, Christopher P Taylor, et al.Frontiers in Neuroscience|March 17, 2025
Decreased scene-selective activity within the posterior intraparietal cortex in amblyopic adultsSarala N Malladi, Jan Skerswetat, Marianna E Schmidt, et al.Scientific Reports|July 23, 2017
Impact of Natural Blind Spot Location on PerimetryMengyu Wang, Lucy Q Shen, Michael V Boland, et al.Ophthalmology|November 7, 2017
Reversal of Glaucoma Hemifield Test Results and Visual Field Features in GlaucomaMengyu Wang, Louis R Pasquale, Lucy Q Shen, et al.Ophthalmology. Glaucoma|December 14, 2020
Predicting Global Test-Retest Variability of Visual Fields in GlaucomaEun Young Choi, Dian Li, Yuying Fan, et al.Ophthalmology|February 22, 2020
Artificial Intelligence Classification of Central Visual Field Patterns in GlaucomaMengyu Wang, Lucy Q Shen, Louis R Pasquale, et al.Investigative Ophthalmology & Visual Science|January 26, 2019
An Artificial Intelligence Approach to Detect Visual Field Progression in Glaucoma Based on Spatial Pattern AnalysisMengyu Wang, Lucy Q Shen, Louis R Pasquale, et al.JAMA Ophthalmology|January 3, 2020
Characterization of Central Visual Field Loss in End-stage Glaucoma by Unsupervised Artificial IntelligenceMengyu Wang, Jorryt Tichelaar, Louis R Pasquale, et al.Translational Vision Science & Technology|November 27, 2020
Inter-Eye Association of Visual Field Defects in Glaucoma and Its Clinical UtilityBettina Teng, Dian Li, Eun Young Choi, et al.Pageof 17